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Updated: Jan 27, 2026

Cooling an Optically Trapped Ultracold Fermi Gas by Periodical Driving
Published on: March 30, 2017
Optical Excitation and Stabilization of Ultracold Field-Linked Tetratomic Molecules
Bijit Mukherjee1, Michał Tomza1
1University of Warsaw, Faculty of Physics, Pasteura 5, 02-093 Warsaw, Poland.
Abstract:
We propose a coherent optical population transfer of weakly bound field-linked (FL) tetratomic molecules (tetramers) to deeper FL bound states using stimulated Raman adiabatic passage. We consider static-electric-field shielded polar alkali-metal diatomic molecules and corresponding FL tetramers in their X^{1}Σ^{+}+X^{1}Σ^{+} ground electronic state. We show that the excited metastable X^{1}Σ^{+}+b^{3}Π electronic manifold supports FL tetramers in a broader range of electric fields with collisional shielding extended to zero field. We calculate the Franck-Condon factors between the ground and excited FL tetramers and show that they are highly tunable with the electric field. We also predict photoassociation of ground-state shielded molecules to the excited FL states in free-bound optical transitions. We propose proof-of-principle experiments to implement stimulated Raman adiabatic passage and photoassociation using FL tetramers, paving the way for the formation of deeply bound ultracold polyatomic molecules.
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